Correlation of the structure of the transmembrane domain of the neu oncogene-encoded p185 protein with its function.
Open Access
- 1 November 1990
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 87 (21) , 8660-8664
- https://doi.org/10.1073/pnas.87.21.8660
Abstract
The human homologue of the neu oncogene is frequently found in human tumors. Certain amino acid substitutions at position 664 in the transmembrane domain of the neu oncogene-encoded p185 protein product are known to cause malignant transformation of cells. Using conformational energy analysis based on ECEPP (empirical conformational energies for polypeptides program), we have previously determined the preferred three-dimensional structures for the transmembrane domain of the p185 protein with a transforming (glutamic acid) and a nontransforming (valine) substitution at the critical position 664 and found that the global minimum-energy conformation of this region in the nontransforming protein contains a sharp bend, whereas the global minimum-energy conformation for this region from the transforming protein is entirely alpha-helical. We now demonstrate that this result holds for other known nontransforming (glycine, histidine, tyrosine, and lysine) and transforming (glutamine) substitutions at position 664. Furthermore, a simple statistical thermodynamic analysis of the results indicates that approximately 85% of each of the nontransforming sequences exist with the bend at positions 664 and 665, while approximately 90% of each of the transforming sequences exist as an alpha-helix. About 9% of the nontransforming sequences exist as the alpha-helix. These results suggest that if the intracellular concentration of the normal protein is increased at least 10-fold, thereby increasing the alpha-helical form by this factor, cell transformation should result. This conclusion is directly supported by genetic experiments in which this level of overexpression of the normal protein was achieved with attendant cell transformation.This publication has 30 references indexed in Scilit:
- Agonistic antibodies stimulate the kinase encoded by the neu protooncogene in living cells but the oncogenic mutant is constitutively active.Proceedings of the National Academy of Sciences, 1990
- Amplification of a Novel v- erb B-Related Gene in a Human Mammary CarcinomaScience, 1985
- Structural effects of substitutions on the p21 proteins.Proceedings of the National Academy of Sciences, 1985
- Prediction of the three-dimensional structure of the transforming region of the EJ/T24 human bladder oncogene product and its normal cellular homologue.Proceedings of the National Academy of Sciences, 1983
- Calculation of the three-dimensional structure of the membrane-bound portion of melittin from its amino acid sequence.Proceedings of the National Academy of Sciences, 1982
- Prediction of the three-dimensional structure of the leader sequence of pre-kappa light chain, a hexadecapeptide.Proceedings of the National Academy of Sciences, 1982
- Identification of a phosphoprotein specifically induced by the transforming DNA of rat neuroblastomasCell, 1982
- Transforming genes of carcinomas and neuroblastomas introduced into mouse fibroblastsNature, 1981
- Conformational Analysis of the 20 Naturally Occurring Amino Acid Residues Using ECEPPMacromolecules, 1977
- Role of Medium-Range Interactions in ProteinsProceedings of the National Academy of Sciences, 1973